Literature DB >> 19229996

Amphiregulin is a factor for resistance of glioma cells to cannabinoid-induced apoptosis.

Mar Lorente1, Arkaitz Carracedo, Sofía Torres, Francesco Natali, Ainara Egia, Sonia Hernández-Tiedra, María Salazar, Cristina Blázquez, Manuel Guzmán, Guillermo Velasco.   

Abstract

Gliomas, one of the most malignant forms of cancer, exhibit high resistance to conventional therapies. Identification of the molecular mechanisms responsible for this resistance is therefore of great interest to improve the efficacy of the treatments against these tumors. Delta9-Tetrahydrocannabinol (THC), the major active ingredient of marijuana, and other cannabinoids inhibit tumor growth in animal models of cancer, including glioma, an effect that relies, at least in part, on the ability of these compounds to induce apoptosis of tumor cells. By analyzing the gene expression profile of two sub-clones of C6 glioma cells with different sensitivity to cannabinoid-induced apoptosis, we found a subset of genes with a marked differential expression in the two sub-clones. Furthermore, we identified the epidermal growth factor receptor ligand amphiregulin as a candidate factor to mediate the resistance of glioma cells to cannabinoid treatment. Amphiregulin was highly overexpressed in the cannabinoid-resistant cell line, both in culture and in tumor xenografts. Moreover, in vivo silencing of amphiregulin rendered the resistant tumors xenografts sensitive to cannabinoid antitumoral action. Amphiregulin expression was associated with increased extracellular signal-regulated kinase (ERK) activation, which mediated the resistance to THC by blunting the expression of p8 and TRB3-two genes involved in cannabinoid-induced apoptosis of glioma cells. Our findings therefore identify Amphirregulin as a factor for resistance of glioma cells to THC-induced apoptosis and contribute to unraveling the molecular bases underlying the emerging notion that targeted inhibition of the EGFR pathway can improve the efficacy of antitumoral therapies. (c) 2009 Wiley-Liss, Inc.

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Year:  2009        PMID: 19229996     DOI: 10.1002/glia.20856

Source DB:  PubMed          Journal:  Glia        ISSN: 0894-1491            Impact factor:   7.452


  12 in total

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Review 2.  Space Invaders: Brain Tumor Exploitation of the Stem Cell Niche.

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3.  Stimulation of the midkine/ALK axis renders glioma cells resistant to cannabinoid antitumoral action.

Authors:  M Lorente; S Torres; M Salazar; A Carracedo; S Hernández-Tiedra; F Rodríguez-Fornés; E García-Taboada; B Meléndez; M Mollejo; Y Campos-Martín; S A Lakatosh; J Barcia; M Guzmán; G Velasco
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Review 4.  Towards the use of cannabinoids as antitumour agents.

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7.  Fatty acid amide hydrolase in prostate cancer: association with disease severity and outcome, CB1 receptor expression and regulation by IL-4.

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Review 9.  Cannabinoids as therapeutic agents in cancer: current status and future implications.

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10.  Nupr1/Chop signal axis is involved in mitochondrion-related endothelial cell apoptosis induced by methamphetamine.

Authors:  D Cai; E Huang; B Luo; Y Yang; F Zhang; C Liu; Z Lin; W-B Xie; H Wang
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